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Optically controlled ultrafast terahertz switching in a CdTe nanostructure thin film

机译:光学控制超速Treahertz切换在CDTE纳米结构薄膜中

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摘要

The speed of optical modulation on a terahertz (THz) pulse is mainly dominated by the optical response of the photocarrier. In order to achieve ultrafast THz modulation, the effective method is to reduce the lifetime of the photocarrier by introducing defects that can trap the photocarriers efficiently. In this paper, we reported the ultrafast optical modulation of THz switching in a 10 nm CdTe nanostructure film. After photoexcitation at 800/400 nm, the THz response of the film is extremely fast with a lifetime of similar to 1.3 ps. Further, the ultrafast transient THz transmission shows almost temperature independence down to 100 K. On the other hand, the transient absorption spectroscopy reveals that the lifetime of photocarriers in CdTe nano structure film lasts as long as several ns. The 1.3 ps THz photoconductivity response is due to the substantial decrease of photocarrier mobility in a CdTe nanostructure, which comes from the increase of the photocarrier scattering between the photocarrier and the surface states of CdTe nanostructural film. Our experimental results provide a new method to design optically driven ultrafast THz response devices, such as THz switch and THz modulator. (C) 2019 Optical Society of America.
机译:在太赫兹(THz)脉冲上的光学调制速度主要由光载波的光学响应主导。为了实现超快THz调制,有效的方法是通过引入能够有效地捕获光载体的缺陷来减少光载体的寿命。在本文中,我们报道了10nM CdTe纳米结构膜中THz切换的超快光学调制。在800/400nm的运动筛选后,薄膜的THz响应非常快,寿命与1.3 ps相似。此外,超快瞬态THz变速器几乎显示为100k的温度独立。另一方面,瞬态吸收光谱揭示了CDTE纳米结构膜中的光燃料的寿命持续只要几个NS。 1.3 PS THz光电导响应是由于CDTE纳米结构中光燃料迁移率的显着降低,这来自光载体与CdTe纳米结构膜的光载体散射的增加。我们的实验结果提供了一种设计光学驱动超快THz响应装置的新方法,例如THz开关和THZ调制器。 (c)2019年光学学会。

著录项

  • 来源
    《Applied optics》 |2019年第30期|共7页
  • 作者单位

    Shanghai Univ Coll Sci Dept Phys Shanghai 200444 Peoples R China;

    Shanghai Univ Coll Sci Dept Phys Shanghai 200444 Peoples R China;

    Shanghai Univ Coll Sci Dept Phys Shanghai 200444 Peoples R China;

    Shanghai Univ Sch Environm &

    Chem Engn Shanghai 200444 Peoples R China;

    Shanghai Univ Coll Sci Dept Phys Shanghai 200444 Peoples R China;

    Shanghai Univ Coll Sci Dept Phys Shanghai 200444 Peoples R China;

    Shanghai Univ Coll Sci Dept Phys Shanghai 200444 Peoples R China;

    ShanghaiTech Univ Sch Phys Sci &

    Technol Shanghai 201210 Peoples R China;

    Shanghai Univ Coll Sci Dept Phys Shanghai 200444 Peoples R China;

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  • 正文语种 eng
  • 中图分类 应用;
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